首页> 外文会议>ASME international mechanical engineering congress and exposition >DEVELOPING A COST-EFFECTIVE AND FUNCTIONAL PROSTHETIC FOOT FOR BELOW KNEE AMPUTEES USING TOPOLOGY OPTIMIZATION AND 3D PRINTING
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DEVELOPING A COST-EFFECTIVE AND FUNCTIONAL PROSTHETIC FOOT FOR BELOW KNEE AMPUTEES USING TOPOLOGY OPTIMIZATION AND 3D PRINTING

机译:使用拓扑优化和3D打印技术为低膝截肢者开发具有成本效益和功能的假肢

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This paper presents the results of an investigative study on the development of an affordable and functional prosthetic foot for below knee amputees. A prototype was successfully manufactured using 3D printing technology. This continuously evolving technology enables the rapid production of prosthetics that are individually customized for each patient. Our prototype was developed after conducting a topology optimization study that interestingly converged to the shape of the biological human foot. Afterwards, a design was envisioned where a simple energy storage and release mechanism was implemented to replace the Achilles tendon, which minimizes the metabolic energy cost of walking. Our mechanism can successfully manage 70% of the energy compared to a normal person during each walking step. A finite element (FE) model of the prosthetic was developed and validated using experimental tests. Then, this FE model was used to confirm the safe operation of the prosthetic through simulating different loading scenarios according to the ISO standard. Our study clearly showed that customizable prosthetics could be produced at a fraction 1/60 of the cost of the commercially sold ones.
机译:本文介绍了针对膝盖以下截肢者的负担得起的功能性假脚开发的调查研究结果。使用3D打印技术成功制造了原型。这项不断发展的技术可以快速生产针对每个患者量身定制的假肢。我们的原型是在进行拓扑优化研究后开发的,该研究有趣地收敛到了生物人脚的形状。之后,设想了一种设计,在该设计中实施了一种简单的能量存储和释放机制来代替跟腱,从而最大程度地减少了步行的新陈代谢能量成本。在每个步行步骤中,与正常人相比,我们的机制可以成功管理70%的能量。使用实验测试开发并验证了假肢的有限元(FE)模型。然后,使用此有限元模型通过根据ISO标准模拟不同的加载场景来确认假体的安全操作。我们的研究清楚地表明,可定制义肢的成本仅为市售义齿的1/60。

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